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Robinson, D.A., Institute of Soil, Water and Environmental Science, (ARO) the Volcani Center, Bet Dagan, Israel, US Salinity Lab USDA-ARS, 450 W Big Springs Road, Riverside, CA 92507, United States
Friedman, S.P., Institute of Soil, Water and Environmental Science, (ARO) the Volcani Center, Bet Dagan, Israel
Measurements are presented for the angle of repose (αr) and the maximum angle of stability (αm) of a slope of poured granular material. Results using monosized grains with three materials of differing shape are presented. This is followed by results with binary mixtures. The results demonstrate a strong relationship between the slope angles and particle shape and that particle size distribution affects the slope angle and avalanching mode, especially as the grains become less spherical. © 2002 Elsevier Science B.V. All rights reserved.
פותח על ידי קלירמאש פתרונות בע"מ -
הספר "אוצר וולקני"
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תנאי שימוש
Observations of the effects of particle shape and particle size distribution on avalanching of granular media
311
Robinson, D.A., Institute of Soil, Water and Environmental Science, (ARO) the Volcani Center, Bet Dagan, Israel, US Salinity Lab USDA-ARS, 450 W Big Springs Road, Riverside, CA 92507, United States
Friedman, S.P., Institute of Soil, Water and Environmental Science, (ARO) the Volcani Center, Bet Dagan, Israel
Observations of the effects of particle shape and particle size distribution on avalanching of granular media
Measurements are presented for the angle of repose (αr) and the maximum angle of stability (αm) of a slope of poured granular material. Results using monosized grains with three materials of differing shape are presented. This is followed by results with binary mixtures. The results demonstrate a strong relationship between the slope angles and particle shape and that particle size distribution affects the slope angle and avalanching mode, especially as the grains become less spherical. © 2002 Elsevier Science B.V. All rights reserved.
Scientific Publication
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